Description
8651209A0011D Использование параметров ABB
Швейцария, и входит в десятку крупнейших швейцарских транснациональных корпораций.8651209A0011D
химическая, нефтехимическая, фармацевтическая, целлюлозно – бумажная, нефтепереработка; Оборудование приборов: электронные приборы, телевизоры и оборудование для передачи данных,
генераторы, гидротехнические сооружения; Каналы связи: интегрированные системы, системы сбора и распространения;8651209A0011DСтроительная промышленность: коммерческое и промышленное строительство.
0 Preface
Germany”s “Industry 4.0″ and the United States” “Industrial Internet” will
restructure the world”s industrial layout and economic structure, bringing different challenges and
opportunities to countries around the world. The State Council of China issued “Made in China 2025” as an action plan
for the first ten years of implementing the strategy of manufacturing a strong country, which will accelerate the integrated
development of IoT technology and manufacturing technology [1]. IoT collects data on machine operations, material usage
, facility logistics, etc., bringing transparency to operators. This transparency is brought about by the application of data analytics,
which refers to the use of statistical and machine learning methods to discover different data characteristics and patterns. Machine
learning technology is increasingly used in various manufacturing applications, such as predictive maintenance, test time reduction,
supply chain optimization, and process optimization, etc. [2-4]. The manufacturing process of enterprises has gradually developed from
the traditional “black box” model to the “multi-dimensional, transparent and ubiquitous perception” model [5].
1 Challenges facing manufacturing analysis
The goal of manufacturing analytics is to increase productivity by reducing costs without compromising quality:
(1) Reduce test time and calibration, including predicting test results and calibration parameters;
(2) Improve quality and reduce the cost of producing scrap (bad parts) by identifying the root causes of scrap and optimizing
the production line on its own;
(3) Reduce warranty costs, use quality testing and process data to predict field failures, and cross-value stream analysis;
(4) Increase throughput, benchmark across production lines and plants, improve first-pass rates, improve first-pass throughput,
and identify the cause of performance bottlenecks such as overall equipment effectiveness (OEE) or cycle time;
WR-D4007 PC board communication adapter RELIANCE ELECTRIC
S-D4006 DI/DO control card RELIANCE ELECTRIC
S-D4007 5 Oblique plate Midplane RELIANCE ELECTRIC
S-D4008 Multiplexer switch module RELIANCE ELECTRIC
S-D4012 Tension controller RELIANCE ELECTRIC
SCXI-1127 Multiplexer switch module NI
SCXI-1125 SCXI voltage input module NI
SCXI-1520 Strain/bridge input modules NI
SCXI-1000 Machine box NI
XV-440-10TVB-1-13-1 Touch screen EATON
LLS570-05 Laser scanner LAETUS
PRG-MODEM Control module card key GE
DL-1200/RTU Input control panel GE
WES5162-9101 PLC control system GE
WES5123-2600 Servo drive module GE
WES5162-9101 Intelligent control GE
WESCOM D200 VME Input/output module GE
WES5302-111 Power drive board GE
WES5302-150 Power supply driver board GE
WES5120 5120-1106 Ethernet module GE
WES5120 5120-1506 General electric module GE
WES13-3 Converter trigger plate GE
D20 MIC 10BASE-T Automatic board GE
D20 EME 10BASE-T Digital input submodule GE
WESDAC D20ME Digital output subroutine GE
D20 EME Controls the I/O module GE
3704E Analog output circuit board TRICONEX
1TGE120010R1300 DCS card module ABB
PU515A 3BSE032401R1 Analog module ABB
PU512V2 3BUR001401R1 Digital output board ABB
3500/93-03-01-00-00 Analog module BENTLY NEVADA
3500/93-02-02-02-00 Pulse input submodule BENTLY NEVADA
3500/93-01-00-00-00 DCS spare parts BENTLY NEVADA
3500/92-04-01-00 DCS system module BENTLY NEVADA
3500/92-01-01 Communication gateway module BENTLY NEVADA
3500/63-01-00 Monitoring module BENTLY NEVADA
3500/61(163179-02) Power connection board BENTLY NEVADA
3500/61(133819-02) Temperature monitor BENTLY NEVADA
3500/53-01-00 Overspeed protection module BENTLY NEVADA
3500/50-04-00 Adapter module BENTLY NEVADA
3500/50-01-01-00-00 Programmable control module BENTLY NEVADA
3500/50-01-00-01 Digital input module l position module BENTLY NEVADA
3500/50-01-00 Speed module BENTLY NEVADA
3500/45-01-00 Expansion/axial position module BENTLY NEVADA
3500/42-01-00 Vibration module BENTLY NEVADA
3500/33-01-00 Key phase module BENTLY NEVADA
3500/32-01-00 Relay module BENTLY NEVADA
3500/25-01-03-00 Relay module BENTLY NEVADA
3500/25-01-01-00 Key phase module BENTLY NEVADA
3500/22-01-01-00 Control system module BENTLY NEVADA
3500/20-02-02-00 Frame interface module BENTLY NEVADA
3500/20-01-01-00 Frame interface module BENTLY NEVADA
3500/15-02-02-00 Power module BENTLY NEVADA
3500/05-02-04-00-00-00 Instrument frame BENTLY NEVADA
3500/05-01-02-00-01 Instrument frame BENTLY NEVADA
3500/05-01-02-00-00-00 Instrument frame BENTLY NEVADA
3500/05-01-01-00-00-00 Feeder protection relay BENTLY NEVADA
3300/55-03-01-15-15-00-00-01-00 Robot power panel BENTLY NEVADA
3300/52-02-00-00 System monitor BENTLY NEVADA
3300/50-01-01-00-00 System monitor BENTLY NEVADA
3300/48-04-02-00-00 Analog output module BENTLY NEVADA
3300/47-01-04-01-00 Temperature input module BENTLY NEVADA
3300/46-04-02-01-00 Armored eddy current probe BENTLY NEVADA
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